Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

Keim-Additec ULTRALUBE E-850 Wax Emulsion

Keim-Additec ULTRALUBE E-850 Wax Emulsion is a high-performance, anionic polyethylene wax dispersion designed for superior slip, abrasion resistance and surface protection in water-based coatings, inks and adhesives—offering excellent stability, low foam and easy integration without compromising gloss or clarity.
  • keim additec ultralube e 850 wax emulsion_98a90371
  • keim additec ultralube e 850 wax emulsion_98a90371

Features Of Keim-Additec ULTRALUBE E-850 Wax Emulsion

  1. Highly stable, anionic polyethylene wax emulsion with excellent shelf life and freeze-thaw resistance.

  2. Delivers superior slip, abrasion resistance, and surface hydrophobicity in water-based coatings and inks.

  3. Low foam formulation compatible with common rheology modifiers and co-emulsifiers.

  4. Non-ionic surfactant-free system minimizes migration and enhances compatibility with acrylic, PUD, and styrene-acrylic dispersions.

  5. Enables low-temperature film formation without compromising lubricity or gloss retention.

Typical Applications Of Keim-Additec ULTRALUBE E-850 Wax Emulsion

  1. Water-based architectural and industrial topcoats requiring mar resistance and surface smoothness.

  2. Flexographic and gravure printing inks for paper, board, and film substrates.

  3. Wood coatings including UV-curable and waterborne varnishes for furniture and flooring.

  4. Textile finishing agents for soft handle and anti-blocking performance on synthetic fabrics.

  5. Adhesive formulations seeking improved release properties and reduced coefficient of friction.

Specifications Of Keim-Additec ULTRALUBE E-850 Wax Emulsion

Chemical TypePolyethylene wax emulsion (anionic)
Product FormAqueous dispersion
AppearanceOpaque white liquid
pH (1% aqueous solution)6.5 – 7.5
Solids Content25 ± 1 wt%
Particle Size (D50)0.2 – 0.4 µm
Viscosity (25°C, Brookfield RVT, spindle #3, 12 rpm)50 – 150 mPa·s
Storage Stability≥ 12 months at 5–35°C, no phase separation


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